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Optical distortion of heated mirrors in CO<inf>2</inf>-laser systems
23
Citations
1
References
1974
Year
Optical MaterialsEngineeringLaser ScienceMechanical EngineeringMirror Optical DistortionLaser ApplicationsLaser PhysicsOptical MetrologyLaser MaterialHigh-power LasersMirror SurfaceLaser OpticsOptical PropertiesReflectionOptical SystemsReflectanceGraded-reflectivity MirrorsPhotonicsPhysicsLaser Beam PropagationLaser Processing TechnologySolid MechanicsLaser DesignElastic Half-spaceApplied PhysicsOptical DistortionMechanics Of MaterialsLaser Damage
Using the model of an elastic half-space, the behavior of the reflecting mirror surface under the action of CW high-power CO <inf xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</inf> -laser beams is considered. The temperature and the stress fields on the mirror surface are calculated. The three critical intensity values corresponding to the three regions of the mirror optical distortion are determined. It is shown that, when optical distortion is to be minimized, the elastic deformation is of great importance at laser flux densities two or three orders of magnitude smaller than those necessary to melt the material of the mirror. The magnitude of the mirror surface normal displacement is experimentally determined. The calculations are found to agree with the experimental data.
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